Bajer Dagmara
Faculty of Chemistry, Nicolaus Copernicus University in Toruń, Gagarina 7, 87-100 Toruń, Poland.
Polymers (Basel). 2024 Apr 1;16(7):958. doi: 10.3390/polym16070958.
Due to the extensive application of petroleum-based plastics as packaging materials and problems related to their degradation/recycling, developing new solutions in the field of novel biopolymer-based materials has become imperative. Natural substitutes for synthetic polymers (starch, cellulose, chitosan) require modifications that enable their processing and provide them with additional properties (i.e., mechanical strength, controlled biodeterioration, antimicrobial and antioxidative activity). The antioxidant activity of natural packaging materials still requires further investigation. In this research paper, novel materials used for packaging perishable food susceptible to oxidizing agents were designed from potato starch (NS) reinforced with antioxidants such as dialdehyde starch (DS) and caffeic acid (CA)/quinic acid (QA). The use of spectroscopic techniques (ATR-FTIR, Raman) and X-ray diffraction allowed the examination of the chemical structure and arrangement of the blend and confirmed the component interactions. The film surface was examined by AFM. DS, functioning as a cross-linker, enhanced the film barrier as well as the mechanical and thermal properties, and it promoted starch amorphization when blended with other antioxidants. The antioxidant activity of caffeic acid was greater than that of quinic acid. Dialdehyde starch improves elasticity, whereas acids (particularly caffeic acid) influence film stiffness. A high susceptibility to biodegradation is valuable for potential eco-friendly packaging applications.
由于石油基塑料作为包装材料的广泛应用以及与其降解/回收相关的问题,开发基于新型生物聚合物材料领域的新解决方案变得势在必行。合成聚合物的天然替代品(淀粉、纤维素、壳聚糖)需要进行改性,以使其能够加工并赋予它们额外的性能(即机械强度、可控的生物降解性、抗菌和抗氧化活性)。天然包装材料的抗氧化活性仍需进一步研究。在本研究论文中,用于包装易受氧化剂影响的易腐食品的新型材料是由用抗氧化剂如二醛淀粉(DS)和咖啡酸(CA)/奎尼酸(QA)增强的马铃薯淀粉(NS)设计而成。使用光谱技术(ATR-FTIR、拉曼)和X射线衍射可以检查共混物的化学结构和排列,并确认组分间的相互作用。通过原子力显微镜(AFM)对薄膜表面进行了检查。作为交联剂的DS增强了薄膜的阻隔性能以及机械和热性能,并且当与其他抗氧化剂共混时促进了淀粉的非晶化。咖啡酸的抗氧化活性大于奎尼酸。二醛淀粉提高了弹性,而酸(特别是咖啡酸)影响薄膜的刚度。对生物降解的高敏感性对于潜在的环保包装应用具有重要价值。